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Sharing direct fiber channels between protection and enterprise applications using wavelength division multiplexing

机译:使用波分复用在保护和企业应用之间共享直接光纤通道

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Protection system communications are increasing in importance because they enable optimal operation of power systems. Because of the high cost of communications systems in the past, protection systems had to be optimized to use minimum bandwidth and were often forced to rely on a single bit of information. A synchronous 64 kbps channel reserved exclusively for the most critical transmission lines was seen as the best-case scenario. Communications system developments over the last three decades have opened a deluge of information, with a single optical fiber now capable of carrying multiple terabits of data simultaneously. Modern protection systems face a totally different problem. Communications bandwidth is almost unlimited, but the channel must be shared with other users and may present multiple challenges, such as channel asymmetry, variable latency, path reconfiguration due to automated failure recovery, packet-based transport, and the need for system-wide time synchronization. This paper reports on an experimental investigation that uses coarse or dense wavelength division multiplexing (CWDM, DWDM) for applications in high-speed traveling-wave protection. The investigation was performed using the latest generation of carrier-grade optical transport network (OTN) equipment. The paper documents the performance, opportunities, and pitfalls associated with this application and outlines practical strategies for the seamless integration of protection systems with the latest generation of OTN technologies.
机译:保护系统通信的重要性日益提高,因为它们可以实现电力系统的最佳运行。由于过去通信系统的高昂成本,保护系统必须进行优化以使用最小带宽,并且常常被迫依赖于单个信息。专为最关键的传输线保留的同步64 kbps信道被视为最佳情况。在过去的三十年中,通信系统的发展开辟了信息的洪流,现在一根光纤可以同时传输多个TB的数据。现代保护系统面临一个完全不同的问题。通信带宽几乎是无限的,但是通道必须与其他用户共享,并且可能会带来多种挑战,例如通道不对称,可变等待时间,由于自动故障恢复导致的路径重新配置,基于数据包的传输以及需要系统范围的时间同步。本文报告了一项实验研究,该实验使用粗略或密集波分复用(CWDM,DWDM)来实现高速行波保护。该调查是使用最新一代的电信级光传输网络(OTN)设备进行的。本文记录了与此应用程序相关的性能,机会和陷阱,并概述了保护系统与最新一代OTN技术无缝集成的实用策略。

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